Investigating the Possibility of Brain Actuated Mobile Robot Through Single-Channel EEG Headset
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Publisher
Springer Singapore
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https://link.springer.com/content/pdf/10.1007/978-981-15-2317-5_49
Reference21 articles.
1. Bi L, Fan X-A, Liu Y (2013) EEG-based brain-controlled mobile robots: a survey. IEEE Trans. Human-Machine Syst. 43:161–176
2. Stephygraph LR, Arunkumar N (2016) Brain-actuated wireless mobile robot control through an adaptive human–machine interface. In: Suresh L, Panigrahi B (eds), Proceedings of the international conference on soft computing systems (Advances in intelligent systems and computing), vol 397. Springer, New Delhi
3. Ruşanu OA, Cristea L, Luculescu MC, Cotfas PA (2018) A brain-computer interface based on the integration of NI myRIO development device and NeuroSky mindwave headset. IOP Conf Ser Mater Sci Eng 444
4. Prathibha R, Swetha L, Shobha KR (2017) Brain computer interface: design and development of a smart robotic gripper for a prosthesis environment. In: 2017 International conference on networks & advances in computational technologies (NetACT), pp 278–283
5. Patel K, Shah H, Dcosta M, Shastri D (2017) Evaluating NeuroSky’s single-channel EEG sensor for drowsiness detection. Presented at the (2017)
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